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Type I collagen hydrogels as a delivery matrix for royal jelly derived extracellular vesicles

机译:I型胶原蛋白水凝胶作为皇家果冻衍生的细胞外囊泡的递送基质

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Throughout the last decade, extracellular vesicles (EVs) have become increasingly popular in several areas of regenerative medicine. Recently, Apis mellifera royal jelly EVs (RJ EVs) were shown to display favorable wound healing properties such as stimulation of mesenchymal stem cell migration and inhibition of staphylococcal biofilms. However, the sustained and effective local delivery of EVs in non-systemic approaches – such as patches for chronic cutaneous wounds – remains an important challenge for the development of novel EV-based wound healing therapies. Therefore, the present study aimed to assess the suitability of type I collagen -a well-established biomaterial for wound healing – as a continuous delivery matrix. RJ EVs were integrated into collagen gels at different concentrations, where gels containing 2?mg/ml collagen were found to display the most stable release kinetics. Functionality of released RJ EVs was confirmed by assessing fibroblast EV uptake and migration in a wound healing assay. We could demonstrate reliable EV uptake into fibroblasts with a sustained pro-migratory effect for up to 7?d. Integrating fibroblasts into the RJ EV-containing collagen gel increased the contractile capacity of these cells, confirming availability of RJ EVs to fibroblasts within the collagen gel. Furthermore, EVs released from collagen gels were found to inhibit Staphylococcus aureus ATCC 29213 biofilm formation. Overall, our results suggest that type I collagen could be utilized as a reliable, reproducible release system to deliver functional RJ EVs for wound healing therapies.
机译:在过去十年中,细胞外囊(EVS)在再生医学的几个领域越来越受欢迎。最近,显示APIS Mellifera Royal Jelly EVS(RJ EVS)显示出良好的伤口愈合性能,例如间充质干细胞迁移和抑制葡萄球菌生物膜的刺激。然而,以非全身方法的持续和有效的局部交付 - 例如慢性皮肤伤口的补丁 - 仍然是开发新型EV的伤口愈合疗法的重要挑战。因此,本研究旨在评估I型胶原蛋白-A良好的生物材料用于伤口愈合的适用性 - 作为连续递送基质。将RJ EVS以不同浓度的胶原凝胶融入胶原凝胶中,其中发现含有2μlmg/ ml胶原蛋白的凝胶显示最稳定的释放动力学。通过评估伤口愈合测定中的成纤维细胞再摄取和迁移来证实释放RJ EVS的功能。我们可以证明可靠的EV摄入成纤维细胞,其持续的普及效应高达7?D.将成纤维细胞集成到含RJ EV的胶原凝胶中增加了这些细胞的收缩能力,确认RJ EV的可用性在胶原凝胶中的成纤维细胞。此外,发现从胶原凝胶中释放的EVS抑制金黄色葡萄球菌ATCC 29213生物膜形成。总体而言,我们的结果表明I型胶原蛋白可用于可靠,可重复的释放系统,以为伤口愈合疗法提供功能性RJ EV。

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